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The nonlinear fracture behaviour of piezoelectric materials.

机译:压电材料的非线性断裂行为。

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摘要

This dissertation presents a comprehensive theoretical study of the plane strain problem of cracked piezoelectric materials. Existing studies indicate that the commonly used electrically impermeable and permeable crack models may be inadequate in evaluating the fracture behaviour of piezoelectric materials in some cases. This is due to the difficulties in describing the electric boundary condition along crack surfaces. In this project, a dielectric crack model based on the 'real' electric boundary condition is proposed to study the nonlinear fracture properties and electromechanical coupling of cracked piezoelectric materials. The electric boundary condition along the crack surfaces is governed by the opening displacement of the crack, which is deformation-dependent and thus nonlinear.; In the current work, the crack is modelled by continuously distributed dislocations involving both displacement and electric potential jumps. The formulation of this nonlinear problem is based on the use of Fourier transform technique and solving the resulting nonlinear singular integral equations. Numerical simulation is conducted to describe the complicated nonlinear fracture behaviour of piezoelectric materials under different electromechanical loads.; The effect of this nonlinear electric boundary condition upon the fracture behaviour of cracked piezoelectric materials is investigated systematically. Multiple deformation modes are observed and discussed, which are governed by geometric and loading conditions. The results obtained from this dielectric crack model demonstrate how the transition between electrically impermeable and permeable crack surface conditions occurs with the change of the crack opening displacement in response to the applied electromechanical loading. The asymptotic behaviour of cracked piezoelectric media is provided when two limiting cases, permeable and impermeable conditions, are reached. Unlike the results predicted by the traditional crack models, the fracture behaviour and the effective electroelastic property of cracked piezoelectric media are found to be nonlinear and sensitive to loading conditions. Based on theoretical analyses and existing experimental results, a new fracture parameter, crack opening displacement intensity factor KCOD, is introduced to predict the effect of applied electric field upon the crack propagation. This work contributes in understanding the nonlinear nature of piezoelectric materials and improving the design and application of this kind of materials in smart structures.
机译:本文对破裂的压电材料的平面应变问题进行了全面的理论研究。现有研究表明,在某些情况下,常用的电渗透性和渗透性裂纹模型可能不足以评估压电材料的断裂行为。这是由于难以描述沿裂纹表面的电边界条件。在该项目中,提出了一种基于“真实”电边界条件的介电裂纹模型,以研究裂纹压电材料的非线性断裂特性和机电耦合。沿裂纹表面的电边界条件由裂纹的开口位移决定,该位移与变形有关,因此是非线性的。在当前的工作中,通过连续分布的位错(包括位移和电势跳变)来模拟裂纹。该非线性问题的表述基于傅立叶变换技术的使用并求解了由此产生的非线性奇异积分方程。进行了数值模拟,以描述压电材料在不同机电载荷下的复杂非线性断裂行为。系统地研究了这种非线性电边界条件对破裂的压电材料的断裂行为的影响。观察并讨论了多种变形模式,这些变形模式受几何和载荷条件的控制。从该介电裂纹模型获得的结果表明,随着所施加的机电载荷,随着裂纹开口位移的变化,电不渗透和可渗透裂纹表面条件之间的过渡如何发生。当达到可渗透和不可渗透的两个极限情况时,将提供破裂的压电介质的渐近行为。与传统裂纹模型所预测的结果不同,裂纹压电介质的断裂行为和有效电弹性性质是非线性的,并且对载荷条件敏感。在理论分析和现有实验结果的基础上,引入了一个新的断裂参数,即开裂位移强度因子KCOD,以预测外加电场对裂纹扩展的影响。这项工作有助于理解压电材料的非线性特性,并改善这种材料在智能结构中的设计和应用。

著录项

  • 作者

    Jiang, Liying.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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